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一次性纸-互补金属氧化物半导体平台,用于实时同时检测代谢物。

Disposable Paper-on-CMOS Platform for Real-Time Simultaneous Detection of Metabolites.

出版信息

IEEE Trans Biomed Eng. 2020 Sep;67(9):2417-2426. doi: 10.1109/TBME.2019.2962239. Epub 2020 Jan 30.

Abstract

OBJECTIVE

Early stage diagnosis of sepsis without overburdening health services is essential to improving patient outcomes.

METHODS

A fast and simple-to-use platform that combines an integrated circuit with paper microfluidics for simultaneous detection of multiple-metabolites appropriate for diagnostics was presented. Paper based sensors are a primary candidate for widespread deployment of diagnostic or test devices. However, the majority of devices today use a simple paper strip to detect a single marker using the reflectance of light. However, for many diseases such as sepsis, one biomarker is not sufficient to make a unique diagnosis. In this work multiple measurements are made on patterned paper simultaneously. Using laser ablation to fabricate microfluidic channels on paper provides a flexible and direct approach for mass manufacture of disposable paper strips. A reusable photodiode array on a complementary metal oxide semiconductor chip is used as the transducer.

RESULTS

The system measures changes in optical absorbance in the paper to achieve a cost-effective and easily implemented system that is capable of multiple simultaneous assays. Potential sepsis metabolite biomarkers glucose and lactate have been studied and quantified with the platform, achieving sensitivity within the physiological range in human serum.

CONCLUSION

We have detailed a disposable paper-based CMOS photodiode sensor platform for real-time simultaneous detection of metabolites for diseases such as sepsis.

SIGNIFICANCE

A combination of a low-cost paper strip with microfluidic channels and a sensitive CMOS photodiode sensor array makes our platform a robust portable and inexpensive biosensing device for multiple diagnostic tests in many different applications.

摘要

目的

在不加重医疗服务负担的情况下,早期诊断脓毒症对于改善患者预后至关重要。

方法

提出了一种快速且易于使用的平台,该平台将集成电路与纸微流控技术相结合,可同时检测适用于诊断的多种代谢物。基于纸张的传感器是广泛部署诊断或测试设备的主要候选者。然而,当今大多数设备都使用简单的纸带,通过光的反射来检测单个标记物。但是,对于许多疾病(例如脓毒症),单一生物标志物不足以做出独特的诊断。在这项工作中,同时在图案化的纸张上进行了多次测量。使用激光烧蚀在纸张上制造微流道提供了一种灵活且直接的方法,可用于一次性纸带的大规模制造。互补金属氧化物半导体芯片上的可重复使用光电二极管阵列用作换能器。

结果

该系统通过测量纸张中的光吸收变化来实现低成本且易于实现的系统,该系统能够同时进行多个分析。已经使用该平台研究和量化了潜在的脓毒症代谢物生物标志物葡萄糖和乳酸,并在人血清中实现了生理范围内的灵敏度。

结论

我们详细介绍了一种用于实时同时检测代谢物的一次性基于纸张的 CMOS 光电二极管传感器平台,可用于脓毒症等疾病的诊断。

意义

低成本纸带与微流道和灵敏的 CMOS 光电二极管传感器阵列的结合使我们的平台成为一种强大的便携式廉价生物传感器设备,可用于许多不同应用中的多种诊断测试。

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